Agricultural adjuvant comprising microfibrillated cellulose
An agricultural adjuvant includes microfibrillated cellulose, a dispersant or wetting agent, in a liquid carrier that has been subjected to shear conditions. The resultant adjuvant displays useful rheological structure and the adjuvant is added to agricultural formulations to stabilize and impart useful rheology to the formulations.
1. A method comprising:
(i) subjecting an adjuvant composition to shear conditions sufficient to increase the storage modulus (G′) or the loss modulus (G″) of the adjuvant composition, the adjuvant composition comprising:
(a) 0.01% by weight to 5% by weight of a chemically unmodified microfibrillated cellulose (MFC);
(b) a surfactant or dispersant; and
(c) a liquid carrier; and
(ii) adding the adjuvant composition to a fertilizer or high ionic strength solution,
wherein the shear conditions comprise shearing the adjuvant composition at 5000 RPM to 10,000 RPM with a blade for at least 4 minutes to achieve a G′ of at least 57 Pascals and a G″ of at least 9.7 Pascals, and
wherein the high ionic strength solution comprises at least 5% saturation of a functional ion.
2. The method of claim 1 , wherein the shear conditions are sufficient to decrease the temperature dependence of the storage modulus (G′) and the loss modulus (G″).
3. The method of claim 1 , wherein the amount of the adjuvant added is sufficient to suspend a particulate form of an agricultural formulation for a target period of time to allow uniform application of the agricultural formulation to a crop.
4. The method of claim 1 , wherein the amount of the adjuvant added provides drip resistance and/or rain-fastness in foliar applications.
5. The method of claim 1 , wherein the amount of the adjuvant added is sufficient to prevent run-off.
6. The method of claim 1 , wherein the adjuvant composition further comprises a rain fastener.
7. The method of claim 1 , wherein an amount of adjuvant added provides a target viscosity to an agrochemical formulation.
8. The method of claim 1 , wherein the shear conditions comprise shearing the adjuvant composition at 5000 RPM to 10,000 RPM with a blade for a sufficient period of time to achieve a G′ of from 57 Pascals to 125 Pascals and a G″ of from 9.7 Pascals to 21 Pascals.